基于GaN晶体管的单级独立照明系统

R. R. Duarte, Abner Campos, M. Costa, V. Bender, José Marcos Alonso Alvarez
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引用次数: 1

摘要

系统效率是独立照明系统发展的关键,因为它们的总体成本与确保系统自主性所需的电池组尺寸和光伏(PV)面板有关。考虑到独立户外照明系统中能源生产和消耗之间的时间差距,在本文中,我们提出了一种使用基于gan的晶体管作为主开关器件的单级解决方案。当电压水平在一定要求范围内时,这种拓扑结构允许光伏面板和LED负载并联,消除了这种类型的转换器中通常使用的开关继电器的需要,从而降低了系统的复杂性和成本。白天,该系统作为同步降压转换器运行,从太阳能电池板收集能量,为电池充电。我们使用最大功率点跟踪(MPPT)算法来最大化收集的能量。在夜间,电路充当同步升压转换器,耗尽电池供应LED负载。我们开发了一个100W的原型进行实验验证。在充电模式下,系统在整个功率范围内的效率高于92%,峰值效率为97.3%。在驾驶员模式下,最高效率达到95.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-Stage Standalone Lighting System Based on GaN Transistors
System efficiency is key to the development of standalone lighting systems as their overall cost is tied to the battery pack size and photovoltaic (PV) panel required to ensure system autonomy. Given the timing gap between energy production and consumption in standalone outdoor lighting systems, in this paper, we propose a single-stage solution using GaN-based transistors as main switching devices. When voltage levels are within certain requirements, this topology allows for the parallel connection of PV panel and LED load, eliminating the need for switching relays typically used in this type of converter, thus reducing system complexity and cost. During the daytime, the system operates as a synchronous buck converter, harvesting energy from a solar-powered panel to charge the battery. We use a maximum power point tracking (MPPT) algorithm to maximize harvested energy. At night, the circuit acts as a synchronous boost converter, draining the battery to supply the LED load. We developed a 100W prototype for experimental verification. In charging mode, the system presented an efficiency higher than 92% within the entire power range with 97.3% peak efficiency. In driver mode, 95.8% peak efficiency was achieved.
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